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分子凝胶作为多孔材料和荧光薄膜合成中的中间体:概念和应用。

Molecular Gels as Intermediates in the Synthesis of Porous Materials and Fluorescent Films: Concepts and Applications.

机构信息

Key Laboratory of Applied Surface and Colloid Chemistry of the Ministry of Education, School of Materials Science and Engineering and ‡School of Chemistry and Chemical Engineering, Shaanxi Normal University Xi'an 710062, People's Republic of China.

出版信息

Langmuir. 2017 Oct 10;33(40):10419-10428. doi: 10.1021/acs.langmuir.6b04655. Epub 2017 Mar 10.

Abstract

Low-molecular-mass organic gelator (LMOG)-based molecular gels are known as one of the most attractive soft materials and have received great attention since the early 1990s. In the last few decades, many LMOGs have been synthesized, and a series of theories have been proposed to better understand molecular gels. However, only limited applications of LMOGs have been realized for a variety of reasons, such as their lack of stability compared to chemical gels. Therefore, efforts to explore the applications of these materials are especially meaningful. As an example, this feature article mainly introduces studies on the application of LMOGs as intermediates in porous materials and fluorescent sensing films. Particular attention will be paid to gelator design, LMOG emulsion preparation, solid surface modification, and the practical application of the obtained materials. Concepts that are related to these studies, such as organic gel-water interface equilibria and molecular gel strategies, will be comprehensively illustrated. Finally, we will conclude with a study of LMOG-based intermediates. Some challenges and future perspectives related to these research areas will also be presented. It is anticipated that this feature article will not only contribute to the further understanding of LMOG-based intermediates but also will help to promote the practical application of molecular gels and facilitate development in related research areas.

摘要

基于低分子量有机凝胶剂 (LMOG) 的分子凝胶被认为是最具吸引力的软物质之一,自 20 世纪 90 年代初以来就受到了极大的关注。在过去的几十年中,已经合成了许多 LMOG,并提出了一系列理论来更好地理解分子凝胶。然而,由于与化学凝胶相比缺乏稳定性等多种原因,LMOG 的应用仅限于有限的领域。因此,探索这些材料的应用尤其具有意义。例如,本文主要介绍了将 LMOG 用作多孔材料和荧光传感膜中间体的应用研究。特别关注凝胶剂设计、LMOG 乳液制备、固面改性以及所得材料的实际应用。将综合说明与这些研究相关的概念,如有机凝胶-水界面平衡和分子凝胶策略。最后,我们将对基于 LMOG 的中间体进行研究。还将介绍与这些研究领域相关的一些挑战和未来展望。预计本文不仅有助于进一步理解基于 LMOG 的中间体,还有助于促进分子凝胶的实际应用,并推动相关研究领域的发展。

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